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Biomedical subjects

R Lortie

Publications and source records attributed to R Lortie.

10 recordsLinked to original sources

Influence of water activity on the enantioselective esterification of (R,S)-ibuprofen by crosslinked crystals of Candida antarctica lipase B in organic solvent media.

The lipase B from Candida antarctica was purified from a commercial source and crystallized. The microcrystals were crosslinked using glutaraldehyde. The crosslinked crystals were then used to catalyze the esterification of (R,S)-ibuprofen with dodecanol in octane at various water activities. As for the commercial preparation immobilized on acrylic resin, Novozym 435, low water activities foster better enantioselectivity, and the maximum reaction rates are obtained for a(W) = 0.1.

Candida↗

Real-time kinetic studies on the interaction of transforming growth factor alpha with the epidermal growth factor receptor extracellular domain reveal a conformational change model.

Transforming growth factor alpha (TGF-alpha), epidermal growth factor (EGF), and related factors mediate their biological effects by binding to the extracellular domain of the EGF receptor, which leads to activation of the receptor's cytoplasmic tyrosine kinase activity. Much remains to be determined, however, about the detailed molecular mechanism involved in this ligand-induced receptor activation. The determination of the binding mechanism and the related thermodynamic and kinetic parameters are of prime importance. To do so, we have used a surface plasmon resonance-based biosensor (the BIAcore) that allows the real-time recording of the interaction between TGF-alpha and the extracellular domain of the EGF receptor. By immobilizing different biotinylated derivatives of TGF-alpha on the sensor chip surface, we demonstrated that the N-terminus of TGF-alpha is not directly involved in receptor binding. By optimizing experimental conditions and interpreting the biosensor results by several data analysis methods, we were able to show that the data do not fit a simple binding model. Through global analysis of the data using a numerical integration method, we tested several binding mechanisms for the TGF-alpha/EGF receptor interaction and found that a conformational change model best fits the biosensor data. Our results, combined with other analyses, strongly support a receptor activation mechanism in which ligand binding results in a conformation-driven exposure of a dimerization site on the receptor.

Binding, Competitive↗

Influence of water activity on the enantioselective esterification of (R,S)-ibuprofen by Candida antarctica lipase B in solventless media.

The lipase-catalyzed enantioselective esterification of ibuprofen has been studied in a media, composed only of substrates. When racemic ibuprofen is used, the alcohol-chain length affects the esterification rates of individual enantiomers, but it does not affect the enantioselectivity. Water activity affects the esterification rates of (R)- and (S)-ibuprofen differently, leading to higher enantioselectivity at lower water activities. Experiments were also conducted at various (R)- to (S)-ibuprofen ratios. It appears that the esterification rate of (R)-ibuprofen is always proportional to its concentration, whereas at low water activity the esterification rate of (S)-ibuprofen shows a saturation at higher concentrations. Other 2-phenyl carboxylic acids were studied, and the increase in apparent enantioselectivity at low-water activity was not observed for the molecules tested.

Biotransformation↗

Enzyme catalyzed esterification.

Enzyme catalyzed esterification reactions have found many applications, ranging from the modification of vegetable oils for human consumption to the production of optically pure chemicals. To displace the equilibrium in favor of synthesis, rather than hydrolysis, these reactions are performed in non-aqueous or microaqueous media. The influence of the amount of water, and of the nature of organic solvent, are new parameters to consider in the optimization of industrial processes. They also add a new perspective to our knowledge of the functioning of enzymes.

Journal Article↗

Evaluation of the performance of immobilized enzyme reactors with Michaelis-Menten kinetics.

Two dimensionless models, taking into account the external mass-transfer, are used to characterize and compare the behaviour of plug flow reactors (PFR) and continuous stirred tank reactors (CSTR). These models need only two parameters, the Damköhler number and the Stanton number, to cover all the range of operating conditions. The conversion and a new dimensionless number, quantifying the use of the enzyme, are calculated for different values of the Damköhler and Stanton numbers.

Chemical Phenomena↗

Determination of the intrinsic Michaelis constant of immobilized alpha-chymotrypsin.

The Michaelis constant of alpha-chymotrypsin, immobilized on a glutaraldehyde-activated silicate support, for N-glutaryl-L-phenylalanine-p-nitroanilide was determined and was found to be identical with that of the enzyme in solution. The influence of intraparticular diffusion was taken into account by immobilizing different amounts of enzyme, thus changing the magnitude of diffusional constraints and extrapolating apparent Michaelis constants, determined for each amount of immobilized enzyme, to zero diffusional constraints. The possible effect of the immobilized enzyme distribution inside the porous matrix was investigated through numerical simulations.

Adsorption↗

Molecular biology.

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Molecular Biology↗

On the use of apparent kinetic parameters for immobilized enzyme with uncompetitive substrate inhibition [corrected].

The use of a simple rate equation with apparent parameters to describe the kinetic behavior of an immobilized enzyme with uncompetitive [corrected] substrate inhibition was assessed. To do so, the reaction rate was calculated as a function of the interfacial substrate concentration, and the results were used to identify the apparent kinetic parameters by nonlinear regression. This procedure was repeated for different values of the diffusional constraints and of the inhibition constant. The equation using apparent parameters can describe the global kinetic behavior, provided that the diffusional and inhibitory constraints are not too high. When the constraints are high, a Michaelis-Menten equation can be used to model the kinetics for interfacial concentrations lower than the concentration leading to the maximum reaction rate.

Enzymes, Immobilized↗